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A Low-Complexity DOA and Polarization Method of Polarization-Sensitive Array

机译:偏振敏感阵列的低复杂度DOA和偏振方法

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摘要

This paper proposes a low-complexity method to estimate the direction of arrival and polarization based on the polarization sensitive array (PSA) which is composed of cross-dipoles. We built a half-quaternions model through the Cayley–Dickson form to remove the redundant information. Then, the directions of arrival (DOAs) were estimated via the root-MUSIC algorithm. Finally, the polarizations were estimated by generalized eigenvalue method. Unlike some existing searching algorithms, such as multiple signal classification (MUSIC), this method can avoid the peak searching and maintains high estimation accuracy. Moreover, we use the oblique projection operators to filter out the interference signals which are decoys of the target signal. Simulation results demonstrate the effectiveness and favorable performance of the proposed method.
机译:提出了一种由交叉偶极子组成的极化敏感阵列(PSA),用于估计入射方向和极化方向。我们通过Cayley-Dickson表格建立了一个半四元数模型,以删除多余的信息。然后,通过根MUSIC算法估算到达方向(DOA)。最后,通过广义特征值方法估计了极化。与某些现有的搜索算法(例如多信号分类(MUSIC))不同,此方法可以避免峰值搜索并保持较高的估计精度。此外,我们使用斜投影算子来滤除干扰信号,这些干扰信号是目标信号的诱饵。仿真结果证明了该方法的有效性和良好的性能。

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